化学
清脆的
核酸
重组酶聚合酶扩增
多路复用
微流控
分子诊断学
生物传感器
计算生物学
数字聚合酶链反应
DNA
纳米技术
聚合酶链反应
环介导等温扩增
生物化学
遗传学
材料科学
生物
基因
作者
Kun Yin,Xiong Ding,Ziyue Li,Hui Zhao,Kumarasen Cooper,Changchun Liu
标识
DOI:10.1021/acs.analchem.0c01459
摘要
Recently, CRISPR-Cas technology has opened a new era of nucleic acid-based molecular diagnostics. However, current CRISPR-Cas-based nucleic acid biosensing has a lack of the quantitative detection ability and typically requires separate manual operations. Herein, we reported a dynamic aqueous multiphase reaction (DAMR) system for simple, sensitive and quantitative one-pot CRISPR-Cas12a based molecular diagnosis by taking advantage of density difference of sucrose concentration. In the DAMR system, recombinase polymerase amplification (RPA) and CRISPR-Cas12a derived fluorescent detection occurred in spatially separated but connected aqueous phases. Our DAMR system was utilized to quantitatively detect human papillomavirus (HPV) 16 and 18 DNAs with sensitivities of 10 and 100 copies within less than 1 h. Multiplex detection of HPV16/18 in clinical human swab samples were successfully achieved in the DAMR system using 3D-printed microfluidic device. Furthermore, we demonstrated that target DNA in real human plasma samples can be directly amplified and detected in the DAMR system without complicated sample pretreatment. As demonstrated, the DAMR system has shown great potential for development of next-generation point-of-care molecular diagnostics.
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